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H3D-Net: Few-Shot High-Fidelity 3D Head Reconstruction (2107.12512v1)

Published 26 Jul 2021 in cs.CV and cs.AI

Abstract: Recent learning approaches that implicitly represent surface geometry using coordinate-based neural representations have shown impressive results in the problem of multi-view 3D reconstruction. The effectiveness of these techniques is, however, subject to the availability of a large number (several tens) of input views of the scene, and computationally demanding optimizations. In this paper, we tackle these limitations for the specific problem of few-shot full 3D head reconstruction, by endowing coordinate-based representations with a probabilistic shape prior that enables faster convergence and better generalization when using few input images (down to three). First, we learn a shape model of 3D heads from thousands of incomplete raw scans using implicit representations. At test time, we jointly overfit two coordinate-based neural networks to the scene, one modeling the geometry and another estimating the surface radiance, using implicit differentiable rendering. We devise a two-stage optimization strategy in which the learned prior is used to initialize and constrain the geometry during an initial optimization phase. Then, the prior is unfrozen and fine-tuned to the scene. By doing this, we achieve high-fidelity head reconstructions, including hair and shoulders, and with a high level of detail that consistently outperforms both state-of-the-art 3D Morphable Models methods in the few-shot scenario, and non-parametric methods when large sets of views are available.

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Authors (7)
  1. Eduard Ramon (6 papers)
  2. Gil Triginer (9 papers)
  3. Janna Escur (2 papers)
  4. Albert Pumarola (31 papers)
  5. Jaime Garcia (5 papers)
  6. Xavier Giro-i-Nieto (69 papers)
  7. Francesc Moreno-Noguer (68 papers)
Citations (85)

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